| Literature DB >> 26998257 |
Juliette Azimzadeh1, Cyril Basquin1.
Abstract
The freshwater planarian Schmidtea mediterranea has recently emerged as a valuable model system to study basal bodies (BBs) and cilia. Planarians are free-living flatworms that use cilia beating at the surface of their ventral epidermis for gliding along substrates. The ventral epidermis is composed of multiciliated cells (MCCs) that are similar to the MCCs in the respiratory airways, the brain ventricles, and the oviducts in vertebrates. In the planarian epidermis, each cell assembles approximately eighty cilia that beat in a coordinate fashion across the tissue. The BBs that nucleate these cilia all assemble de novo during terminal differentiation of MCCs. The genome of the planarian S. mediterranea has been sequenced and efficient methods for targeting gene expression by RNA interference are available. Defects induced by perturbing the expression of BB proteins can be detected simply by analyzing the locomotion of planarians. BBs are present in large numbers and in predictable orientation, which greatly facilitates analyses by immunofluorescence and electron microscopy. The great ease in targeting gene expression and analyzing associated defects allowed to identify a set of proteins required for BB assembly and function in planarian MCCs. Future technological developments, including methods for transgenic expression in planarians and in related species, will achieve turning free-living flatworms into powerful model systems to study MCCs and the associated human pathologies.Entities:
Keywords: Basal foot; De novo basal body assembly; Multiciliated cell; Planaria
Year: 2016 PMID: 26998257 PMCID: PMC4799839 DOI: 10.1186/s13630-016-0037-1
Source DB: PubMed Journal: Cilia ISSN: 2046-2530
Fig. 1The ventral multiciliated epidermis of planarians. a Schmidtea mediterranea. Bar is 5 mm. b Immunofluorescence view of the ventral epidermis of S. mediterranea. BBs are in green (anti-SMED-CEP135) and nuclei are in blue (DAPI). Bar is 5 µm. c Schematic representation of the planarian ventral epidermis
Fig. 2Ultrastructure of BBs and associated structures in S. mediterranea. Transmission electron microscope views of BBs in (a, c, d) sensory neurons and (b) epidermal MCCs. a Longitudinal view of a BB in an epidermal process emanating from a subepidermal sensory neuron. TZ transition zone, arrow ciliary rootlet. b Transverse view of a BB showing the basal foot (arrowhead) and the horizontal ciliary rootlet (arrow). c Transverse view of a BB in a sensory process showing nine-fold symmetrical blade-like structures. d Transverse section through the same BB as in (c) 100 nm away toward the distal end showing the distal appendages (also called transition fibers). Solid lines are used to highlight the distal appendages, dotted lines are used when the distal appendages are not clearly visible on this section. Bar is 0.2 µm in (a–d)